In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecule from variational Quantum Monte Carlo (VMC) computations by means of a given correlated mapping wave function. Such a wave function is modeled on a Generalized Valence Bond plus Complete Active Space Configuration Interaction form and fits at best the density resulting from the Slater-Jastrow wave function of VMC. The accuracy of the method proposed has been proved by comparing the resulting kinetic energy with the corresponding VMC value. This 1-RDM is used to analyze the amount of correlation eventually captured in Kohn-Sham calculations performed in an unrestricted approach (UKS-DFT) and with different energy functionals. We performed tes...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
A comprehensive description of nondynamic correlation is still an open controversy in the Kohn-Sham ...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
With the development of peta-scale computers and exa-scale only a few years away, the quantum Monte ...
With the development of peta-scale computers and exa-scale only a few years away, the quantum Monte ...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
41 pages, 21 figures, 3 tablesTurboRVB is a computational package for {\it ab initio} Quantum Monte ...
We present a quantum Monte Carlo method capable of sampling the full density matrix of a many-partic...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
In this work, we present a method to build a first order reduced density matrix (1-RDM) of a molecul...
A comprehensive description of nondynamic correlation is still an open controversy in the Kohn-Sham ...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
With the development of peta-scale computers and exa-scale only a few years away, the quantum Monte ...
With the development of peta-scale computers and exa-scale only a few years away, the quantum Monte ...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
41 pages, 21 figures, 3 tablesTurboRVB is a computational package for {\it ab initio} Quantum Monte ...
We present a quantum Monte Carlo method capable of sampling the full density matrix of a many-partic...
We present a selective correlation scheme allowing us to correlate only subsets of electrons, which ...
In this work, we present a simple decomposition scheme of the Kohn-Sham optimized orbitals which is ...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...